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Comparison of bubble eruption models with two-fluids simulations in a 2D gas-fluidized bed

机译:二维气体流化床中气泡喷发模型与双流体模拟的比较

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摘要

Two-fluid simulations of gas–solid fluidized beds are performed in this work with a threefold aim: (1) explore the capabilities of two-fluid modelling to reproduce realistically bubble eruption patterns intwo-dimensional fluidized beds; (2) compare the results obtained from the two-fluid simulations with particle ejection models; and (3) provide information about the mutual interaction of the gas and particleflows during bubble eruption. To fulfil these aims, results from two-fluid simulations concerning the vertical and horizontal velocities of particles in bubble domes, prior to and during bubble eruption, are reported and compared with previously published experimental data taken from a bed of comparable geometry and operating conditions. The comparison shows excellent quantitative agreement. Particle ejection velocities estimated through semi-empirical and theoretical models proposed in the literature are compared with the particle behaviour in the bubble dome obtained from the two-fluid simulations. The results obtained here indicate that the theory based on the potential flow around a cylinder provides a more accurate prediction for the particle velocities in erupting bubbles than semi-empirical relations. For the data reported here it has been found that the velocity of particles in the bubble dome forms an angle with the vertical direction that is twice the angle formed by the radial direction. This observation is contrary to standard models of 2D bubbles, which assume that the particles are ejected radially outwards from the dome
机译:在这项工作中进行气固两相流化床的两流体模拟,其目的是三重的:(1)探索两流体模型在二维流化床中真实再现气泡喷出模式的能力; (2)将两种流体模拟的结果与粒子喷射模型进行比较; (3)提供有关气泡喷发过程中气体与颗粒流相互作用的信息。为了实现这些目标,报告了在气泡喷出之前和期间,有关气泡穹顶中颗粒的垂直和水平速度的两种流体模拟的结果,并将其与以前发表的实验数据进行了比较,该实验数据取自具有类似几何形状和工作条件的床。比较显示出极好的定量一致性。通过文献中提出的半经验和理论模型估算的粒子喷射速度与通过双流体模拟获得的气泡圆顶中的粒子行为进行了比较。此处获得的结果表明,与半经验关系相比,基于绕圆柱体的势流的理论可以更准确地预测喷出气泡中的粒子速度。对于此处报告的数据,已经发现气泡穹顶中的粒子速度与垂直方向形成一个角度,该角度是径向方向形成的角度的两倍。此观察结果与2D气泡的标准模型相反,后者假定颗粒从圆顶径向向外喷射。

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